Floating-gate-programmable and reconfigurable, digital and mixed-signal systems

This body of work as whole has the theme of using floating-gates and reconfigurable systems to explore and implement non-traditional computing solutions to difficult problems. Various computational methodologies are used simultaneously to solve problems by mapping pieces of them to the appropriate t...

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Main Author: Wunderlich, Richard Bryan
Other Authors: Hasler, Jennifer
Format: Others
Language:en_US
Published: Georgia Institute of Technology 2014
Subjects:
Online Access:http://hdl.handle.net/1853/51815
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spelling ndltd-GATECH-oai-smartech.gatech.edu-1853-518152014-09-30T03:35:24ZFloating-gate-programmable and reconfigurable, digital and mixed-signal systemsWunderlich, Richard BryanFloating-gateReconfigurableDigitalAnalog processingField programmable gate arraysThis body of work as whole has the theme of using floating-gates and reconfigurable systems to explore and implement non-traditional computing solutions to difficult problems. Various computational methodologies are used simultaneously to solve problems by mapping pieces of them to the appropriate type of computer. There exists no systematic approach to simultaneously apply analog, digital, and neuromorphic techniques to solving general problems. Typically, this is a very difficult task, and one that few attempt to undertake. However, when done right, solutions can be found with orders-of-magnitude improvement over existing solutions restricted to using only one type computational domain. To that end, I have helped build large and complicated reconfigurable systems (and software tools for helping to use these systems) capable of implementing solutions to problems in all three of those domains simultaneously. These systems are used to explore and implement these cross domain solutions to difficult problems. The earlier work was involved with simply applying floating-gate technology to improving the building blocks of digital systems. Through that early work a new logic family built from floating-gate transistors was discovered, a Logical Effort compatible power analysis technique was developed, and low power floating-gate based FPGA was implemented. This work was then merged with existing research in the group involving solving problems using reconfigurable analog, and neuromorphic techniques. Thus converging on the mentioned systems that allow one to solve problems using techniques from all three domains: analog, neuromorphic, and digital.Georgia Institute of TechnologyHasler, Jennifer2014-05-22T15:24:05Z2014-05-22T15:24:05Z2014-052014-01-10May 20142014-05-22T15:24:05ZDissertationapplication/pdfhttp://hdl.handle.net/1853/51815en_US
collection NDLTD
language en_US
format Others
sources NDLTD
topic Floating-gate
Reconfigurable
Digital
Analog processing
Field programmable gate arrays
spellingShingle Floating-gate
Reconfigurable
Digital
Analog processing
Field programmable gate arrays
Wunderlich, Richard Bryan
Floating-gate-programmable and reconfigurable, digital and mixed-signal systems
description This body of work as whole has the theme of using floating-gates and reconfigurable systems to explore and implement non-traditional computing solutions to difficult problems. Various computational methodologies are used simultaneously to solve problems by mapping pieces of them to the appropriate type of computer. There exists no systematic approach to simultaneously apply analog, digital, and neuromorphic techniques to solving general problems. Typically, this is a very difficult task, and one that few attempt to undertake. However, when done right, solutions can be found with orders-of-magnitude improvement over existing solutions restricted to using only one type computational domain. To that end, I have helped build large and complicated reconfigurable systems (and software tools for helping to use these systems) capable of implementing solutions to problems in all three of those domains simultaneously. These systems are used to explore and implement these cross domain solutions to difficult problems. The earlier work was involved with simply applying floating-gate technology to improving the building blocks of digital systems. Through that early work a new logic family built from floating-gate transistors was discovered, a Logical Effort compatible power analysis technique was developed, and low power floating-gate based FPGA was implemented. This work was then merged with existing research in the group involving solving problems using reconfigurable analog, and neuromorphic techniques. Thus converging on the mentioned systems that allow one to solve problems using techniques from all three domains: analog, neuromorphic, and digital.
author2 Hasler, Jennifer
author_facet Hasler, Jennifer
Wunderlich, Richard Bryan
author Wunderlich, Richard Bryan
author_sort Wunderlich, Richard Bryan
title Floating-gate-programmable and reconfigurable, digital and mixed-signal systems
title_short Floating-gate-programmable and reconfigurable, digital and mixed-signal systems
title_full Floating-gate-programmable and reconfigurable, digital and mixed-signal systems
title_fullStr Floating-gate-programmable and reconfigurable, digital and mixed-signal systems
title_full_unstemmed Floating-gate-programmable and reconfigurable, digital and mixed-signal systems
title_sort floating-gate-programmable and reconfigurable, digital and mixed-signal systems
publisher Georgia Institute of Technology
publishDate 2014
url http://hdl.handle.net/1853/51815
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